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PINK1/帕金蛋白介导的线粒体自噬在神经退行性疾病中的作用

PINK1/Parkin-mediated mitophagy in neurodegenerative diseases.

作者信息

Li Jie, Yang Dongming, Li Zhiping, Zhao Mengyang, Wang Dongdong, Sun Zhixin, Wen Pei, Dai Yuexin, Gou Fengting, Ji Yilan, Zhao Deming, Yang Lifeng

机构信息

National Animal Transmissible Spongiform Encephalopathy Laboratory, College of Veterinary Medicine, State Key Laboratories for Agrobiotechnology, Key Laboratory of Animal Epidemiology of Ministry of Agriculture and Rural Affairs, China Agricultural University, Beijing, China.

National Animal Transmissible Spongiform Encephalopathy Laboratory, College of Veterinary Medicine, State Key Laboratories for Agrobiotechnology, Key Laboratory of Animal Epidemiology of Ministry of Agriculture and Rural Affairs, China Agricultural University, Beijing, China.

出版信息

Ageing Res Rev. 2023 Feb;84:101817. doi: 10.1016/j.arr.2022.101817. Epub 2022 Dec 9.

Abstract

Mitochondria play key roles in bioenergetics, metabolism, and signaling; therefore, stable mitochondrial function is essential for cell survival, particularly in energy-intensive neuronal cells. In neurodegenerative diseases, damaged mitochondria accumulate in neurons causing associated bioenergetics deficiency, impaired cell signaling, defective cytoplasmic calcium buffering, and other pathological changes. Mitochondrial quality control is an important mechanism to ensure the maintenance of mitochondrial health, homeostasis, and mitophagy, the latter of which is a pathway that delivers defective mitochondria to the lysosome for degradation. Defective mitophagy is thought to be responsible for the accumulation of damaged mitochondria, which leads to cellular dysfunction and/or death in neurodegenerative diseases. PINK1/Parkin mainly regulates ubiquitin-dependent mitophagy, which is crucial for many aspects of mitochondrial physiology, particularly the initiation of autophagic mechanisms. Therefore, in the present review, we summarize the current knowledge of the conventional mitophagy pathway, focusing on the molecular mechanisms underlying mitophagy dysregulation in prion disease and other age-related neurodegenerative diseases, especially in relation to the PINK1/Parkin pathway. Moreover, we list the inducers of mitophagy that possess neuroprotective effects, in addition to their mechanisms related to the PINK1/Parkin pathway. These mechanisms may provide potential interventions centered on the regulation of mitophagy and offer therapeutic strategies for the treatment of neurodegenerative diseases.

摘要

线粒体在生物能量学、新陈代谢和信号传导中发挥着关键作用;因此,稳定的线粒体功能对于细胞存活至关重要,尤其是在能量密集型的神经细胞中。在神经退行性疾病中,受损的线粒体在神经元中积累,导致相关的生物能量学缺陷、细胞信号传导受损、细胞质钙缓冲功能缺陷以及其他病理变化。线粒体质量控制是确保线粒体健康、稳态和线粒体自噬维持的重要机制,后者是一种将有缺陷的线粒体输送到溶酶体进行降解的途径。有缺陷的线粒体自噬被认为是导致受损线粒体积累的原因,这会导致神经退行性疾病中的细胞功能障碍和/或死亡。PINK1/Parkin主要调节泛素依赖性线粒体自噬,这对线粒体生理学的许多方面至关重要,尤其是自噬机制的启动。因此,在本综述中,我们总结了当前关于传统线粒体自噬途径的知识,重点关注朊病毒病和其他与年龄相关的神经退行性疾病中线粒体自噬失调的分子机制,特别是与PINK1/Parkin途径相关的机制。此外,我们列出了具有神经保护作用的线粒体自噬诱导剂,以及它们与PINK1/Parkin途径相关的机制。这些机制可能提供以线粒体自噬调节为中心的潜在干预措施,并为神经退行性疾病的治疗提供治疗策略。

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